The reaction on the graph is: X+ BAXA+B Transition State A----B M Graph 1 Potential Energy X + A-B Reactant Element X could be iron. Element X could be gold. Element X could be potassium. Element X could be copper. Reaction Product X-A + B

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One aspect of the collision theory and transition state theory is the role of the nature of the reactants. Using the information below, which of the following metals has the appropriate nature for this reaction to take place if B is aluminum?
One aspect of the collision theory and transition state theory is the role of the nature of the
reactants. Using the information below, which of the following metals has the appropriate nature
for this reaction to take place if B is aluminum?
Potassium
Sodium
Calcium
Magnesium
Aluminium
Carbon
Zinc
Iron
Tin
Lead
Hydrogen
Copper
Silver
Gold
Platinum
most reactive
least reactive
The reaction on the graph is:
X + BAXA + B
4
Transcribed Image Text:One aspect of the collision theory and transition state theory is the role of the nature of the reactants. Using the information below, which of the following metals has the appropriate nature for this reaction to take place if B is aluminum? Potassium Sodium Calcium Magnesium Aluminium Carbon Zinc Iron Tin Lead Hydrogen Copper Silver Gold Platinum most reactive least reactive The reaction on the graph is: X + BAXA + B 4
The reaction on the graph is:
Potential
Graph 1
Transition State
AB
31*
Reactant
Energy X +
A-B
-M
Element X could be iron.
X + BA → XA + B
Element X could be gold.
Element X could be potassium.
Element X could be copper.
Reaction
Product
X-A +
B
K
Transcribed Image Text:The reaction on the graph is: Potential Graph 1 Transition State AB 31* Reactant Energy X + A-B -M Element X could be iron. X + BA → XA + B Element X could be gold. Element X could be potassium. Element X could be copper. Reaction Product X-A + B K
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